Explore the effect of insulation thickness on the heat loss q and the temperature of the insulation outer surface T2 for a steam pipe of 0.05-m outside diameter that is insulated with a layer of calcium silicate. The temperature of the steam fixed at 600 K and the outer surface is exposed to an airflow (T=30°C) that maintains a heat transfer coefficient of h = 85 W/m2.K, which includes the effects of radiation. where ri= 0.025 m and r2 is a variable (0.025 < r2 < 0.50 m). Compute and plot the heat loss and outer surface temperature T32 as a function of the insulation thickness.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Explore the effect of insulation thickness on the heat loss q and the temperature of the
insulation outer surface T2 for a steam pipe of 0.05-m outside diameter that is insulated
with a layer of calcium silicate. The temperature of the steam fixed at 600 K and the outer
surface is exposed to an airflow (T=30°C) that maintains a heat transfer coefficient of h
= 85 W/m2.K, which includes the effects of radiation. where ri= 0.025 m and r2 is a
variable (0.025 < r2 < 0.50 m). Compute and plot the heat loss and outer surface
temperature T32 as a function of the insulation thickness.
Transcribed Image Text:Explore the effect of insulation thickness on the heat loss q and the temperature of the insulation outer surface T2 for a steam pipe of 0.05-m outside diameter that is insulated with a layer of calcium silicate. The temperature of the steam fixed at 600 K and the outer surface is exposed to an airflow (T=30°C) that maintains a heat transfer coefficient of h = 85 W/m2.K, which includes the effects of radiation. where ri= 0.025 m and r2 is a variable (0.025 < r2 < 0.50 m). Compute and plot the heat loss and outer surface temperature T32 as a function of the insulation thickness.
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